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Ionic liquid-based electrolytes for lithium-ion batteries: review of performances of various electrode systems

机译:锂离子电池离子液体电解质:各种电极系统的性能回顾

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摘要

Lithium-ion cells based on Graphite/LiFePO4 (C-gr/LFP), Li4Ti5O12/LiFePO4 (LTO/LFP) and Li4Ti5O12/LiNi1/3Mn1/3Co1/3O2 (LTO/NMC), using [C1C (n) Im][NTf2]- and [C1C1C (n) Im][NTf2] (n = 4 and 6)-based electrolytes with different lithium salts such as Li[N(SO2CF3)(2)] (LiNTf2), Li[N(SO2F)(2)] (LiFSI) and LiPF6 were tested at 333 K and compared to a commercial carbonate-based electrolyte [EC:DEC][LiPF6]. The impact of different factors such as length of side-alkyl chain on imidazolium ring or its C2-H substitution with CH3 group was studied, and the influence of the presence of organic additives as well as the value of the nominal voltage of the systems, was also reported. Finally, common trends for all these IL-based electrolyte systems were discussed.
机译:基于石墨/ LiFePO4(C-gr / LFP),Li4Ti5O12 / LiFePO4(LTO / LFP)和Li4Ti5O12 / LiNi1 / 3Mn1 / 3Co1 / 3O2(LTO / NMC)的锂离子电池,使用[C1C(n)Im] [ NTf2]和[C1C1C(n)Im] [NTf2](n = 4和6)基电解质,并带有不同的锂盐,例如Li [N(SO2CF3)(2)](LiNTf2),Li [N(SO2F) (2)](LiFSI)和LiPF6在333 K下进行了测试,并与市售的基于碳酸盐的电解质[EC:DEC] [LiPF6]进行了比较。研究了侧链长度对咪唑鎓环或其被CH3取代的C2-H等不同因素的影响,并研究了有机添加剂的存在以及体系标称电压值的影响,也有报道。最后,讨论了所有这些基于IL的电解质系统的共同趋势。

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